E3S Web of Conferences,
Journal Year:
2024,
Volume and Issue:
511, P. 01033 - 01033
Published: Jan. 1, 2024
This
research
explores
the
transformative
potential
of
nanomaterial
developments
in
tending
to
water
and
soil
contamination
through
economical
natural
remediation
procedures.
Three
unmistakable
nanomaterials,
Nanoparticle
A,
Nanocomposite
B,
Nanotube
C,
were
synthesized
efficiently
assessed
for
their
adequacy
poison
expulsion.
In
adsorption
tests,
B
showed
remarkable
lead
expulsion
capacity,
outperforming
A
C
with
values
30
mg/g.
Catalytic
debasement
tests
illustrated
B’s
predominant
proficiency
corrupting
phenol,
accomplishing
a
noteworthy
68%,
outflanking
A.
comprehensive
compatibility
appraisal
uncovered
decreased
ecotoxicity
cytotoxicity
files
situating
it
as
naturally
inviting
choice
remediation.
Comparative
investigations
related
works
exhibit
importance
fitting
properties
focused
on
The
promising
results
emphasize
maintainable
multifunctional
arrangement
investigation
contributes
profitable
insights
developing
field
nanotechnology-enabled
administration,
emphasizing
requirement
capable
sending
nanomaterials
attain
long-term
environmental
human
well-being
benefits.
ACS Omega,
Journal Year:
2025,
Volume and Issue:
10(12), P. 11961 - 11971
Published: March 20, 2025
This
work
examined
the
simple
synthesis
of
a
multifunctional
nanomaterial
based
on
MoS2
and
g-C3N4
nanosheets
(NSs)
combination
for
dual,
adsorption-based
photocatalytic
degradation-based
removal
Rhodamine
B
(RhB),
sildenafil
citrate
(SLD),
fluoxetine
(FLX)
from
water.
The
study
intended
to
identify
best
ratio
obtain
adsorption
performances;
therefore,
MoS2@g-C3N4
nanocomposites
were
synthesized
with
four
different
ratios
NSs
NSs,
then
characterized
FT-IR,
XRD,
SEM
techniques.
Consequently,
(3)
was
identified
be
most
effective
outstanding
photocatalyst
abilities.
specifically
optimized
nanocomposite
further
experimented
SLD
FLX
removal,
demonstrating
high
efficiency
regarding
all
pollutants
highest
percentage
at
pH
4.0
RhB,
8.0
SLD,
9.0
FLX,
respectively.
A
higher
degradation
rate
realized
under
UV
light
complete
decolorization
RhB
in
300
min
210
min.
Thus,
ability
material
point
toward
fact
that
it
may
used
treat
wide
range
environmental
pollutants.